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载姜黄素介孔硅纳米载体递药系统的构建及其对肝癌的治疗作用

Mitochondria-Targeting Polymer Micelles in Stepwise Response Releasing Gemcitabine and Destroying the Mitochondria and Nucleus for Combined Antitumor Chemotherapy.

机构信息

Key Laboratory of Advanced Mass Spectrometry and Molecular Analysis of Zhejiang Province, School of Materials Science and Chemical Engineering, Ningbo University, Ningbo 315211, China.

School of Medicine, Ningbo University, Ningbo 315211, China.

出版信息

Int J Mol Sci. 2022 Oct 20;23(20):12624. doi: 10.3390/ijms232012624.

Abstract

Mitochondrial DNA and nuclear DNA are essential genetic material which play an important role in maintaining normal metabolism, survival, and proliferation of cells. Constructing a mitochondria-targeting stimuli-responsive nano-drug delivery system releasing chemotherapeutic agents in a stepwise response manner and destroying mitochondrial DNA and nuclear DNA simultaneously is an effective way to improve the anti-tumor effect of chemotherapeutic agents. In this study, a new mitochondria-targeting pH/ROS dual-responsive block copolymer TPP-PEG2k--(BS-AA) (P1), untargeted pH/ROS dual-responsive copolymer mPEG2k--(BS-AA) (P2), pH single-responsive copolymer (mPEG2k--(AH-AA) (P3), ROS single-responsive copolymer mPEG2k--(SA-TG) (P4), and non-responsive copolymer mPEG--PCL (P5) were constructed. pH/ROS-responsive properties were characterized by proton nuclear magnetic resonance (H NMR) and dynamic light scattering (DLS). Anticancer chemotherapeutic agent gemcitabine (GEM) or fluorescent substance Nile Red (NR) were loaded in the polymer micelles. Results of the mitochondrial colocalization experiment indicate that (5-carboxypentyl)(triphenyl)phosphonium bromide (TPP)-functionalized P1 micelles could be efficiently targeted and located in mitochondria. Results of the cellular uptake experiment showed that pH/ROS dual-responsive GEM-loaded P1 and P2 micelles have faster internalized and entry nucleus rates than single-responsive or non-responsive GEM-loaded micelles. The in vitro release experiment suggests pH/ROS dual-responsive GEM/P1 and GEM/P2 micelles have higher cumulative release than single-responsive GEM/P3 and GEM/P4 micelles. The in vitro cytotoxic experiment shows that the mitochondria-targeted dual-responsive GEM/P1 micelles had the lowest IC50 values, and the cytotoxic effect of dual-responsive GEM/P2 micelles was superior to the single-responsive and non-responsive drug-loaded micelles.

摘要

线粒体 DNA 和核 DNA 是维持细胞正常代谢、生存和增殖所必需的遗传物质。构建一种线粒体靶向的刺激响应型纳米药物递送系统,以逐步响应的方式释放化疗药物,同时破坏线粒体 DNA 和核 DNA,是提高化疗药物抗肿瘤效果的有效方法。在本研究中,构建了一种新的线粒体靶向 pH/ROS 双重响应嵌段共聚物 TPP-PEG2k--(BS-AA)(P1)、非靶向 pH/ROS 双重响应嵌段共聚物 mPEG2k--(BS-AA)(P2)、pH 单响应嵌段共聚物(mPEG2k--(AH-AA)(P3)、ROS 单响应嵌段共聚物 mPEG2k--(SA-TG)(P4)和非响应嵌段共聚物 mPEG--PCL(P5)。通过质子核磁共振(H NMR)和动态光散射(DLS)对 pH/ROS 响应性能进行了表征。将抗癌化疗药物吉西他滨(GEM)或荧光物质尼罗红(NR)装载在聚合物胶束中。线粒体共定位实验结果表明,(5-羧基戊基)(三苯基)溴化膦(TPP)功能化 P1 胶束能够高效靶向并定位在线粒体中。细胞摄取实验结果表明,pH/ROS 双重响应 GEM 负载的 P1 和 P2 胶束比单响应或非响应 GEM 负载的胶束具有更快的内化和进入核的速率。体外释放实验表明,pH/ROS 双重响应 GEM/P1 和 GEM/P2 胶束具有比单响应 GEM/P3 和 GEM/P4 胶束更高的累积释放率。体外细胞毒性实验表明,线粒体靶向双重响应 GEM/P1 胶束具有最低的 IC50 值,且双重响应 GEM/P2 胶束的细胞毒性作用优于单响应和非响应载药胶束。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4eb/9604266/f31ca33d72ae/ijms-23-12624-sch001.jpg

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